Hybrid Intelligence for Smart Grid Systems

Hybrid Intelligence for Smart Grid Systems by Seelam V. S. V. Prabhu Deva Kumar, published by CRC Press, Taylor & Francis Group on October 22, 2021, is a comprehensive resource that explores the principles of distributed control and optimization theory as they apply to smart grid systems. This edition, consisting of 188 pages, provides an in-depth analysis of both conventional and nonconventional methods for developing effective smart grids, detailing the fundamental design schemes necessary for practical implementation.
Readers will find a thorough examination of the smart grid’s structure, needs, benefits, and challenges, along with insights into inverter topologies for integrating renewable energy sources. The book serves as a valuable tool for researchers, engineering professionals, and students, equipping them with the knowledge required to transition from theoretical concepts to real-world applications. It also addresses the implications for regulators, policymakers, and energy executives, highlighting the future of energy delivery systems in a rapidly evolving landscape.
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This book provides an overview of distributed control and distributed optimization theory, followed by specific details on industrial applications to smart grid systems. It discusses the fundamental analysis and design schemes for developing actual working smart grids and covers all aspects concerning the conventional and nonconventional methods of their use.
Hybrid Intelligence for Smart Grid Systems provides an overview of a smart grid, along with its needs, benefits, challenges, and existing structure and describes the inverter topologies adopted for integrating renewable power, and provides an overview of its needs, benefits, challenges, and possible future technologies.
This pioneering book is a must-read for researchers, engineering professionals, and students, giving them the tools needed to move from the concept of a smart grid to its actual design and implementation. Moreover, it will enable regulators, policymakers, and energy executives to understand the future of energy delivery systems towards safe, economical, high-quality power delivery in a dynamic and demanding environment.
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